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BS EN 60289:1995

Withdrawn
Withdrawn

A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

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withdrawn

A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

Reactors
Available format(s)

Hardcopy , PDF

Withdrawn date

10-27-2018

Language(s)

English

Published date

10-08-2002

Foreword
Section 1. General
1 Scope
2 Definitions
Section 2. Shunt reactors
3 General
4 Definitions
5 Rating
6 Insulation level
7 Rating plates
8 Tests
9 Tolerances
Section 3. Current-limiting reactors and neutral-earthing
           reactors
10 General
11 Definitions
12 Rating
13 Insulation level
14 Ability to withstand short-time current
15 Temperature rise
16 Rating plates
17 Tests
18 Tolerances
Section 4. Damping reactors
19 General
20 Definitions
21 Rating
22 Insulation level
23 Temperature rise
24 Rating plates
25 Tests
26 Tolerances
Section 5. Tuning (filter) reactors
27 General
28 Definitions
29 Rating
30 Rating plates
31 Tests
32 Tolerances
Section 6. Earthing transformers (neutral couplers)
33 Introduction
34 General
35 Definitions
36 Rating
37 Ability to withstand the rated neutral current
38 Temperature rise
39 Insulation level
40 Rating plates
41 Tests
42 Tolerances
Section 7. Arc suppression reactors
43 General
44 Definitions
45 Rating
46 Adjustment range
47 Winding temperature rise
48 Insulation level
49 Rating plates
50 Tests
51 Tolerances
Section 8. Smoothing reactors
52 General
53 Definitions
54 Rating
55 Insulation level
56 Temperature rise
57 Rating plates
58 Tests
59 Tolerances
Annex ZA (normative) Other international publications
         quoted in this standard with the references
         of the relevant European publications
Annex ZB (informative) Installation and safety of a
         reactor
Figures
Tables

Applies to all reactor applications except small reactors (2 kvar single-phase and 10 kvar three-phase) and special high-frequency line traps for rolling stock.

Committee
PEL/14
DevelopmentNote
Renumbers and supersedes BS 4944(1994) 1995 version incorporates amendment 8405 to BS 4944(1994). Supersedes BS 4944(1973), 01/206404 DC & 91/31735 DC. (10/2005)
DocumentType
Standard
Pages
58
PublisherName
British Standards Institution
Status
Withdrawn
SupersededBy
Supersedes

IEC 60060-2:2010 High-voltage test techniques - Part 2: Measuring systems
BS 171-1:1978 Power transformers General
HD 464 : S1 AMD 5 2002 DRY-TYPE POWER TRANSFORMERS
HD 398.2 : S1 AMD 1 POWER TRANSFORMERS - TEMPERATURE RISE
IEC 60076-5:2006 Power transformers - Part 5: Ability to withstand short circuit
ISO 3:1973 Preferred numbers Series of preferred numbers
HD 398.1 : 200S1 POWER TRANSFORMERS - GENERAL
HD 588.1 : S1 AMD 1 HIGH VOLTAGE TEST TECHNIQUES - GENERAL DEFINITIONS AND TEST REQUIREMENTS
BS EN 60551:1993 Determination of transformer and reactor sound levels
IEC 60722:1982 Guide to the lightning impulse and switching impulse testing of power transformers and reactors
BS 2045:1965 Preferred numbers
HD 398.5 : S1 AMD 1 POWER TRANSFORMERS - ABILITY TO WITHSTAND SHORT CIRCUIT
IEC 60076-3:2013 Power transformers - Part 3: Insulation levels, dielectric tests and external clearances in air
IEC 60076-1:2011 Power transformers - Part 1: General
HD 398.3 : S1 AMD 1 POWER TRANSFORMERS - INSULATION LEVELS AND DIELECTRIC TESTS
EN 60551:1992/A1:1997 DETERMINATION OF TRANSFORMER AND REACTOR SOUND LEVELS
IEC 60076-2:2011 Power transformers - Part 2: Temperature rise for liquid-immersed transformers
BS 171-2:1978 Power transformers Specification for temperature rise requirements
IEC 60060-1:2010 High-voltage test techniques - Part 1: General definitions and test requirements
BS 171-3:1987 Power transformers Specification for insulation levels and dielectric tests
BS 171-5:1978 Power transformers Specification for ability to withstand short circuit

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